XC7V2000T-1FLG1925CES9937 - Virtex-7 FPGA 1200 I/O | AMD
MPN: XC7V2000T-1FLG1925CES9937 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $15000 | $15,000.00 |
| 10 | $14000 | $140,000.00 |
| 100 | $13000 | $1,300,000.00 |
| 500 | $12000 | $6,000,000.00 |
| 1,000 | $11000 | $11,000,000.00 |
Drop-in alternatives for XC7V2000T-1FLG1925CES9937 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
XC7V2000T-1FLG1925I
β Drop-Inπ Reference alternative (not in catalog)
XC7V2000T-2FLG1925I
β Drop-Inπ Reference alternative (not in catalog)
XC7V2000T-2FLG1925C
β Drop-Inπ Reference alternative (not in catalog)
XC7V2000T-1FLG1925CES9937 Maximum Ratings & Electrical Characteristics
| Family | Virtex-7 T |
| Number of Logic Elements | 1954560 |
| Total RAM Bits | 47628288 |
| Number of I/O | 1200 |
| Number of LABs/CLBs | 152700 |
| Supply Voltage | 0.97V to 1.03V |
| Package | 1925-FCBGA (45x45 mm) |
| Mounting Type | Surface Mount |
| Operating Temperature | [DATA_NEEDED: operating temperature range] |
| Speed Grade | -1 |
| Process Technology | 28nm |
| Number of Transceivers | [DATA_NEEDED: number of transceivers] |
| DSP Slices | [DATA_NEEDED: number of DSP slices] |
| RoHS Status | [DATA_NEEDED: RoHS status] |
| MSL Level | [DATA_NEEDED: MSL level] |
XC7V2000T-1FLG1925CES9937 Pin Configuration
| Pin A1 | IO_L1P_T0 β User I/O pin |
| Pin A2 | IO_L1N_T0 β User I/O pin |
| Pin B1 | VCCINT β Internal core supply voltage |
| Pin B2 | GND β Ground |
| Pin C1 | IO_L2P_T0 β User I/O pin |
| Pin C2 | IO_L2N_T0 β User I/O pin |
| Pin D1 | VCCAUX β Auxiliary supply voltage |
| Pin D2 | GND β Ground |
| Pin E1 | IO_L3P_T0 β User I/O pin |
| Pin E2 | IO_L3N_T0 β User I/O pin |
| Pin F1 | VCCBRAM β Block RAM supply voltage |
| Pin F2 | GND β Ground |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
XC7V2000T-1FLG1925CES9937 is suitable for 6 applications: High-Performance Computing, Wired and Wireless Communications, Aerospace and Defense, Broadcast and Video Processing, Medical Imaging, Data Center Networking.
High-Performance Computing
The XC7V2000T-1FLG1925CES9937 is ideal for high-performance computing (HPC) applications such as data center acceleration, AI inference, and scientific simulations. Its massive logic capacity (1,954,560 logic elements) and 47.6 Mb of block RAM enable complex parallel processing. The 1200 I/O pins support high-bandwidth memory interfaces and interconnects. With 28nm technology, it offers a balance of performance and power efficiency, making it suitable for power-constrained HPC environments. The device can be used to implement custom accelerators for workloads like deep learning, where its DSP slices and transceivers provide high throughput.
Recommended
Wired and Wireless Communications
In communications infrastructure, the XC7V2000T-1FLG1925CES9937 excels in baseband processing, packet processing, and protocol handling. Its high-speed transceivers support 10G/40G/100G Ethernet and CPRI interfaces. The 1200 I/O pins allow flexible connection to PHYs and switches. The device's large logic capacity enables implementation of complex modulation schemes and error correction algorithms. Its 28nm process ensures low power consumption, critical for dense line cards. The FPGA can be reconfigured to support evolving standards, providing future-proofing for telecom equipment.
Recommended
Aerospace and Defense
The XC7V2000T-1FLG1925CES9937 is suitable for aerospace and defense applications such as radar, electronic warfare, and secure communications. Its high logic density and DSP slices enable real-time signal processing. The device supports radiation-tolerant designs when combined with mitigation techniques. The 1925-FCBGA package is robust for harsh environments. The FPGA's reconfigurability allows for in-field updates and adaptive algorithms. Its high I/O count facilitates interfacing with sensors and actuators. The -1 speed grade provides a good balance of performance and power for mission-critical systems.
Recommended
Broadcast and Video Processing
For broadcast and professional video, the XC7V2000T-1FLG1925CES9937 provides the horsepower for 4K/8K video processing, encoding, and transcoding. Its high logic capacity supports complex video algorithms like motion estimation and noise reduction. The 1200 I/O pins enable multiple SDI or HDMI interfaces. The device's transceivers can handle high-bandwidth video streams. With 47.6 Mb of RAM, it can buffer multiple frames. The FPGA's parallelism allows real-time processing of multiple video channels simultaneously, making it ideal for broadcast infrastructure.
Recommended
Medical Imaging
In medical imaging systems like CT, MRI, and ultrasound, the XC7V2000T-1FLG1925CES9937 enables advanced image reconstruction and processing. Its high logic density and DSP slices accelerate algorithms such as FFT and filtering. The device's high I/O count interfaces with ADCs and sensors. The 28nm process ensures low power, important for portable devices. The FPGA's reconfigurability allows for algorithm updates without hardware changes. Its reliability and long-term availability make it suitable for medical equipment with long lifecycles.
Recommended
Data Center Networking
The XC7V2000T-1FLG1925CES9937 is well-suited for data center networking equipment such as switches, routers, and network interface cards. Its high-speed transceivers support 100G Ethernet and beyond. The 1200 I/O pins allow connection to multiple QSFP28 ports. The device's large logic capacity enables implementation of complex packet processing and forwarding engines. With 47.6 Mb of RAM, it can store large forwarding tables. The FPGA's flexibility allows for protocol updates and custom features, making it ideal for next-generation networking.
Recommended
Recommended Products Summary
Engineering reference data for XC7V2000T-1FLG1925CES9937 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | XC7V2000T-1FLG1925I | XC7V2000T-2FLG1925I | XC7V2000T-2FLG1925C |
|---|---|---|---|---|
| Package | 1925-FCBGA | 1925-FCBGA | 1925-FCBGA | 1925-FCBGA |
| Brand | AMD | AMD | AMD | AMD |
| Speed Grade | -1 | -1 | -2 | -2 |
| Temperature Range | Commercial (likely) | Industrial | Industrial | Commercial |
| Logic Elements | 1954560 | 1954560 | 1954560 | 1954560 |
| Total RAM Bits | 47628288 | 47628288 | 47628288 | 47628288 |
| Number of I/O | 1200 | 1200 | 1200 | 1200 |
| Supply Voltage | 0.97V to 1.03V | 0.97V to 1.03V | 0.97V to 1.03V | 0.97V to 1.03V |
Key Differentiators
- Massive logic capacity (vs XC7A100T)
- High I/O count (vs XC7V2000T-2FHG1761C)
- Speed grade flexibility (vs XC7V2000T-2FLG1925I)
Design Notes
The XC7V2000T-1FLG1925CES9937 requires multiple power rails: VCCINT (0.97V-1.03V), VCCAUX, VCCBRAM, and VCCO for I/O banks. Use a dedicated power management solution with proper sequencing. Refer to the Virtex-7 FPGA Power Management application note for recommended power supply designs.
The 1925-FCBGA package can dissipate significant power. Ensure adequate cooling with a heatsink and airflow. Use thermal vias under the package and a solid copper plane for heat spreading. The junction temperature must be kept within the specified range to ensure reliability.
For high-speed signals, follow the layout guidelines in the Virtex-7 PCB Design Guide. Use controlled impedance traces, minimize crosstalk, and provide proper ground planes. Decouple each power pin with a 0.1uF capacitor and add bulk capacitors on the board.
Compliance Information
Compliance information not provided in the verified data. Check AMD's product page for RoHS and REACH status.